2. A single-input, single-output (SISO) system has an input-output relationship represented by the following state equations: *(t) = Ax(t) + Bu(t) y(t) = Cx(t) + Du(t) 1 1. where A = B = 1 C = (75 55 13 1) and D = 0. -5726 – 3765 – 477 – 15, a. Provide and expression for the transfer function G(s) = Y(s)/U(s) of the system. b. Determine the poles and zeros of this system.

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2. A single-input, single-output (SISO) system has an input-output relationship represented by the
following state equations:
*(t) = Ax(t) + Bu(t)
y(t) = Cx(t) + Du(t)
0.
1
1.
where A =
B =
1
C = (75 55 13 1) and D = 0.
-5726 – 3765 – 477 – 15,
a. Provide and expression for the transfer function G(s) = Y(s)/U(s) of the system.
b. Determine the poles and zeros of this system.
Transcribed Image Text:2. A single-input, single-output (SISO) system has an input-output relationship represented by the following state equations: *(t) = Ax(t) + Bu(t) y(t) = Cx(t) + Du(t) 0. 1 1. where A = B = 1 C = (75 55 13 1) and D = 0. -5726 – 3765 – 477 – 15, a. Provide and expression for the transfer function G(s) = Y(s)/U(s) of the system. b. Determine the poles and zeros of this system.
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